Title :
Optical Multicasting of 16QAM Signals in Periodically-Poled Lithium Niobate Waveguide
Author :
Malacarne, Antonio ; Meloni, Gianluca ; Berrettini, G. ; Sambo, Nicola ; Poti, Luca ; Bogoni, Antonella
Author_Institution :
Nat. Lab. of Photonic Networks-CNIT, Pisa, Italy
Abstract :
We experimentally demonstrate multicasting operation of a 16QAM signal, by simultaneously generating multiple copies of the signal through optical wavelength conversion in a single periodically-poled Lithium Niobate (PPLN) waveguide. The simultaneous conversion of the signal on multiple wavelengths is based on the cascade of sum frequency generation and difference frequency generation second order nonlinear effects taking place in the PPLN. Each conversion is potentially tunable in the whole C-band and polarization independent operation is achieved by embedding the PPLN in a polarization diversity scheme. A first experiment reports a 3-fold wavelength conversion of a single polarization 112 Gb/s 16QAM signal. Both DFB lasers and ECLs are used to generate the optical pump signals employed in the scheme; the impact of different phase noise amounts induced by the pumps on the BER curve behavior is also discussed and numerically verified. A second experiment reports a 2-fold wavelength conversion of a 224 Gb/s polarization-multiplexed (PM)-16QAM signal, thus confirming the correct operation for PM signals. At last, the multicasting operation on the PM-16QAM signal is successfully employed in a WDM metro network scenario.
Keywords :
distributed feedback lasers; error statistics; light polarisation; lithium compounds; nonlinear optics; optical pumping; optical waveguides; optical wavelength conversion; quadrature amplitude modulation; wavelength division multiplexing; 16QAM signals; 2-fold wavelength conversion; 3-fold wavelength conversion; BER curve behavior; DFB lasers; LiNbO3; PM-16QAM signal; PPLN waveguide; WDM metro network scenario; bit rate 112 Gbit/s; bit rate 224 Gbit/s; difference frequency generation; multicasting operation; optical multicasting; optical pump signals; optical wavelength conversion; periodically-poled lithium niobate waveguide; phase noise amounts; polarization diversity; polarization independent operation; polarization-multiplexing; second order nonlinear effects; single periodically-poled lithium niobate; sum frequency generation; whole C-band; Adaptive optics; Multicast communication; Nonlinear optics; Optical polarization; Optical pumping; Optical waveguides; Optical wavelength conversion; Multicast communication; nonlinear optical devices; optical fiber communication; optical fiber networks; optical waveguides; optical wavelength conversion; quadrature amplitude modulation;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2013.2259217